首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Hydrodeoxygenation and hydrocracking of solvolysed lignocellulosic biomass by oxide, reduced and sulphide form of NiMo, Ni, Mo and Pd catalysts
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Hydrodeoxygenation and hydrocracking of solvolysed lignocellulosic biomass by oxide, reduced and sulphide form of NiMo, Ni, Mo and Pd catalysts

机译:NiMo,Ni,Mo和Pd催化剂的氧化物,还原形式和硫化物形式对溶剂化木质纤维素生物质的加氢脱氧和加氢裂化

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Innovative second-generation biofuel was obtained by a low-temperature ultrasonic liquefaction of waste wood biomass in glycerol, diethylene glycol and p-toluenesulfonic acid, and its hydrotreatment in the presence of various heterogeneous catalysts and hydrogen donor solvents. Depolymerization and solubilization of cellulose, hemicellulose and lignin by using residual glycerin from biodiesel production make solvolysis process highly sustainable thermochemical biomass to liquid (BtL) route. Solvolytic oil containing 25-33 wt% of liquefied spruce and fir sawdust was upgraded by hydrotreatment utilizing heterogeneous catalysis at 300 °C and 8MPa of hydrogen pressure. Prior to kinetic experiments, mass transfer and heat transfer resistances were reduced, and activity of catalytic hydrocracking and hydrodeoxygenation (HDO) was investigated for four NiMo/Al2O3 bifunctional catalysts in oxide, reduced and sulphide form, Ni/Al2O3-SiO2, MoS2, Pd/Al2O3 and Pd/C. Promoting effects of hydrogen donor solvents were investigated for tetralin, phenol, 2-propanol, pyridine, m-cresol, anthracene, cyclohexanol and xylene. Lumped reaction kinetic model was developed to determine kinetics of hydrogenolysis, decarboxylation, decarbonylation and hydrocracking of products of liquefaction, such as levulinic acid, guaiacol and hydroxymethyl furfural (HMF), according to their functional groups and related gaseous products, quantified by Fourier transform infrared spectroscopy. Upgraded liquid product was also characterized for energetic and fuel applications by following its Theological properties and measurements of gross calorific value.
机译:通过将废木材生物量在甘油,二甘醇和对甲苯磺酸中进行低温超声液化,并在各种非均相催化剂和氢供体溶剂的存在下对其进行加氢处理,从而获得了创新的第二代生物燃料。利用生物柴油生产中残留的甘油对纤维素,半纤维素和木质素进行解聚和增溶,使溶剂分解过程成为高度可持续的热化学生物质到液体(BtL)路线。含有25-33 wt%的液化云杉和锯木屑的溶剂化油通过在300°C和8MPa的氢气压力下进行多相催化加氢处理而得到提质。在动力学实验之前,降低了传质和传热的阻力,并研究了四种NiMo / Al2O3双功能催化剂,以氧化物,还原和硫化物形式,Ni / Al2O3-SiO2,MoS2,Pd的催化加氢裂化和加氢脱氧(HDO)活性。 / Al2O3和Pd / C。研究了氢供体溶剂对四氢萘,苯酚,2-丙醇,吡啶,间甲酚,蒽,环己醇和二甲苯的促进作用。建立了集总反应动力学模型,根据其官能团和相关的气态产物,通过傅立叶变换红外定量,确定了液化产物(如乙酰丙酸,愈创木酚和羟甲基糠醛(HMF))的氢解,脱羧,脱羰和加氢裂化动力学。光谱学。升级后的液体产品还通过遵循其流变学性质和总热值测量来表征用于能源和燃料应用。

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